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鉴定与毛白杨木质部形成相关的新的蛋白质-蛋白质和蛋白质-DNA 相互作用。

Identification of new protein-protein and protein-DNA interactions linked with wood formation in Populus trichocarpa.

机构信息

Department of Forest Resources and Environmental Conservation, Virginia Tech, Blacksburg, VA 24061, USA.

Department of Horticulture, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Tree Physiol. 2018 Mar 1;38(3):362-377. doi: 10.1093/treephys/tpx121.

Abstract

Cellular processes, such as signal transduction and cell wall deposition, are organized by macromolecule interactions. Experimentally determined protein-protein interactions (PPIs) and protein-DNA interactions (PDIs) relevant to woody plant development are sparse. To begin to develop a Populus trichocarpa Torr. & A. Gray wood interactome, we applied the yeast-two-hybrid (Y2H) assay in different ways to enable the discovery of novel PPIs and connected networks. We first cloned open reading frames (ORFs) for 361 genes markedly upregulated in secondary xylem compared with secondary phloem and performed a binary Y2H screen with these proteins. By screening a xylem cDNA library for interactors of a subset of these proteins and then recapitulating the process by using a subset of the interactors as baits, we ultimately identified 165 PPIs involving 162 different ORFs. Thirty-eight transcription factors (TFs) included in our collection of P. trichocarpa wood ORFs were used in a Y1H screen for binding to promoter regions of three genes involved in lignin biosynthesis resulting in 40 PDIs involving 20 different TFs. The network incorporating both the PPIs and PDIs included 14 connected subnetworks, with the largest having 132 members. Protein-protein interactions and PDIs validated previous reports and also identified new candidate wood formation proteins and modules through their interactions with proteins and promoters known to be involved in secondary cell wall synthesis. Selected examples are discussed including a PPI between Mps one binder (MOB1) and a mitogen-activated protein kinase kinase kinase kinase (M4K) that was further characterized by assays confirming the PPI as well as its effect on subcellular localization. Mapping of published transcriptomic data showing developmentally detailed expression patterns across a secondary stem onto the network supported that the PPIs and PDIs are relevant to wood formation, and also illustrated that wood-associated interactions involve gene products that are not upregulated in secondary xylem.

摘要

细胞过程,如信号转导和细胞壁沉积,是通过大分子相互作用组织的。与木本植物发育相关的实验确定的蛋白质-蛋白质相互作用(PPIs)和蛋白质-DNA 相互作用(PDIs)很少。为了开始开发杨属的 Populus trichocarpa Torr. & A. Gray 木材相互作用组,我们以不同的方式应用酵母双杂交(Y2H)测定法,以发现新的 PPI 和连接网络。我们首先克隆了 361 个基因的开放阅读框(ORF),这些基因在次生木质部中的表达明显高于次生韧皮部,并对这些蛋白质进行了二元 Y2H 筛选。通过筛选这些蛋白质的亚组的相互作用子文库,然后使用相互作用子的亚组作为诱饵重复该过程,我们最终鉴定了 165 个涉及 162 个不同 ORF 的 PPI。我们收集的 P. trichocarpa 木材 ORF 中包含的 38 个转录因子(TF)用于 Y1H 筛选,以与参与木质素生物合成的三个基因的启动子区域结合,导致涉及 20 个不同 TF 的 40 个 PDIs。包含 PPI 和 PDIs 的网络包括 14 个连接的子网,最大的子网有 132 个成员。蛋白质-蛋白质相互作用和 PDIs 验证了以前的报告,并且还通过它们与已知参与次生细胞壁合成的蛋白质和启动子的相互作用,鉴定了新的候选木材形成蛋白和模块。讨论了选定的例子,包括 Mps one binder (MOB1) 和 mitogen-activated protein kinase kinase kinase kinase (M4K) 之间的 PPI,该 PPI 通过确认 PPI 及其对亚细胞定位的影响的测定进一步得到了表征。将显示次生茎上发育详细表达模式的已发表转录组数据映射到网络上表明,PPIs 和 PDIs 与木材形成有关,并且还说明了与木材相关的相互作用涉及在次生木质部中未上调的基因产物。

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